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Electromagnetic interference shielding efficiency of polyaniline composites filled with graphene decorated with metallic nanoparticles Journal article
Composites Science and Technology, 2013,Volume: 80,Page: 80-86
Authors:  Chen Y.;  Li Y.;  Yip M.;  Tai N.
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A. Nano-composites  A. Polymer-matrix composites (PMCs)  B. Electrical properties  
Thermal characterizations of the graphite nanosheets reinforced paraffin phase-change composites Journal article
Composites Part A: Applied Science and Manufacturing, 2013,Volume: 44,Issue: 1,Page: 40-46
Authors:  Chen Y.-J.;  Nguyen D.-D.;  Shen M.-Y.;  Yip M.-C.;  Tai N.-H.
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A. Polymer-matrix composites (PMCs)  B. Thermal properties  D. Thermal analysis  
A facile route to isotropic conductive nanocomposites by direct polymer infiltration of carbon nanotube sponges Journal article
ACS Nano, 2011,Volume: 5,Issue: 6,Page: 4276-4283
Authors:  Gui X.;  Li H.;  Zhang L.;  Jia Y.;  Liu L.;  Li Z.;  Wei J.;  Wang K.;  Zhu H.;  Tang Z.;  Wu D.;  Cao A.
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carbon nanotubes  electromechanical device  isotropic property  nanocomposites  sponges  
AFM characterization of the interfacial properties of carbon fiber reinforced polymer composites subjected to hygrothermal treatments Journal article
Composites Science and Technology, 2007,Volume: 67,Issue: 1,Page: 92-101
Authors:  Wang Y.;  Hahn T.H.
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A. CFRP composites  B. Hygrothermal effect  B. Interface  D. Atomic force microscope  
Effects of low-energy impact on the fatigue behavior of carbon/epoxy composites Journal article
Composites Science and Technology, 1998,Volume: 58,Issue: 1,Page: 1-8
Authors:  Tai N.H.;  Yip M.C.;  Lin J.L.
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A. polymer-matrix composites  B. fatigue  B. impact behaviour  Low-energy impact